Journal of Textile Research ›› 2015, Vol. 36 ›› Issue (03): 24-27.

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Influence of cylinder speed on fiber length distribution of flat strips

  

  • Received:2014-02-28 Revised:2014-06-28 Online:2015-03-15 Published:2015-03-16

Abstract:

Influence of cylinder speed on fiber length distribution of flat strips was studied. The flat strips were produced at four different speeds of cylinder and their lengths were tested with Premier aQura, and the length distribution of different cylinder speeds was analyzed. The results show that fiber length distribution of flat strips is influenced by cylinder speed. The short fiber (less than 12 mm) content of flat strips tends to increase with the increase of cylinder speed. In view of fiber length distribution of flat strips, a cylinder speed of 450 r/min is the best, and at this speed, the fiber (less than 18 mm) the content of flat strips is higher than that of other cylinder speeds evidently. Furthermore, it may be more comprehensive and accurate to estimate carding effect by using of fiber length distribution in comparison with using fiber length parameters.

Key words: carder, cylinder speed, flat strip, fiber length distribution

CLC Number: 

  • TS104.2
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[1] . [J]. JOURNAL OF TEXTILE RESEARCH, 2004, 25(03): 44 -47 .
[2] ZHU Jun. Processing technology of the flame retardant product of polyacrylonitrile oxidized fibers[J]. JOURNAL OF TEXTILE RESEARCH, 2006, 27(5): 59 -62 .
[3] LI Lijun;PU Zongyao;LI Feng;WANG Hua;LAN Bin. Thermal degradation kinetics of polyphenylene sulfide fibers[J]. JOURNAL OF TEXTILE RESEARCH, 2010, 31(12): 4 -8 .
[4] . [J]. JOURNAL OF TEXTILE RESEARCH, 2009, 30(08): 64 -68 .
[5] . [J]. JOURNAL OF TEXTILE RESEARCH, 1998, 19(03): 12 -13 .
[6] . [J]. JOURNAL OF TEXTILE RESEARCH, 1998, 19(06): 56 -59 .
[7] SHAO Jiang;WEN Weidong;CUI Haitao. Computer simulation of three-dimensional preforms using track and column braiding[J]. JOURNAL OF TEXTILE RESEARCH, 2008, 29(9): 129 -132 .
[8] XIANG Qian;YANG Jianguo;CHENG Longdi. Yarn quality prediction by support vector machine method[J]. JOURNAL OF TEXTILE RESEARCH, 2008, 29(4): 43 -46 .
[9] . [J]. JOURNAL OF TEXTILE RESEARCH, 2004, 25(05): 57 -58 .
[10] . [J]. JOURNAL OF TEXTILE RESEARCH, 1995, 16(01): 54 -57 .